A combined dynamics for the spin and lattice degrees of freedom is proposed. For that we couple a Heisenberg spin Hamiltonian via a distance dependent exchange integral and an anisotropic correction to the lattice, where the latter is formed by a harmonic potential. With these extensions the transfer of energy as well as angular momentum between lattice and spins is possible. We test this model successfully by reproducing the Einstein-De Haas effect for a free cluster. On the other hand we find severe differences of the temperature dependent demagnetization dynamics of the new approach as compared to the well-established magnetization dynamics covered by Gilbert damping.publishe
In this thesis, we present the realization of an isolated Heisenberg XXZ spin 1/2 system with an off...
We consider an implementation of the adiabatic spin dynamics approach in a tight-binding description...
We consider an implementation of the adiabatic spin dynamics approach in a tight-binding description...
A combined dynamics for the spin and lattice degrees of freedom is proposed. For that we couple a He...
A unified model of molecular and atomistic spin dynamics is presented enabling simulations both in m...
A unified model of molecular and atomistic spin dynamics is presented enabling simulations both in m...
The spin and lattice dynamics of a ferromagnetic nanoparticle are studied via molecular dynamics and...
We develop an atomistic spin-lattice dynamics model for simulating energy relaxation in magnetic mat...
Abstract. We develop a Spin-Lattice Dynamics (SLD) simulation model for ferromagnetic iron where ato...
We study the dynamics of multi-spin systems with energy dissipation with the Heisenberg model for an...
We derive relaxation times for magnon-magnon interactions in antiferromagnetic spin configurations w...
This thesis treats two different aspects of quantum spin dynamics. First, we studied decoherence pro...
The spin and lattice dynamics of a ferromagnetic nanoparticle are studied via molecular dynamics and...
In general, the dynamics of many-body quantum systems far-from-equilibrium is highly intricate, and ...
The exchange constant in a magnetic system results from the overlap of orbitals, so it depends upon ...
In this thesis, we present the realization of an isolated Heisenberg XXZ spin 1/2 system with an off...
We consider an implementation of the adiabatic spin dynamics approach in a tight-binding description...
We consider an implementation of the adiabatic spin dynamics approach in a tight-binding description...
A combined dynamics for the spin and lattice degrees of freedom is proposed. For that we couple a He...
A unified model of molecular and atomistic spin dynamics is presented enabling simulations both in m...
A unified model of molecular and atomistic spin dynamics is presented enabling simulations both in m...
The spin and lattice dynamics of a ferromagnetic nanoparticle are studied via molecular dynamics and...
We develop an atomistic spin-lattice dynamics model for simulating energy relaxation in magnetic mat...
Abstract. We develop a Spin-Lattice Dynamics (SLD) simulation model for ferromagnetic iron where ato...
We study the dynamics of multi-spin systems with energy dissipation with the Heisenberg model for an...
We derive relaxation times for magnon-magnon interactions in antiferromagnetic spin configurations w...
This thesis treats two different aspects of quantum spin dynamics. First, we studied decoherence pro...
The spin and lattice dynamics of a ferromagnetic nanoparticle are studied via molecular dynamics and...
In general, the dynamics of many-body quantum systems far-from-equilibrium is highly intricate, and ...
The exchange constant in a magnetic system results from the overlap of orbitals, so it depends upon ...
In this thesis, we present the realization of an isolated Heisenberg XXZ spin 1/2 system with an off...
We consider an implementation of the adiabatic spin dynamics approach in a tight-binding description...
We consider an implementation of the adiabatic spin dynamics approach in a tight-binding description...